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Biomedical subjects

G M Ribbers

Publications and source records attributed to G M Ribbers.

3 recordsLinked to original sources

Axillary brachial plexus blockade for the reflex sympathetic dystrophy syndrome.

The reflex sympathetic dystrophy syndrome (RSD) is a neurogenic pain syndrome that is characterized by pain, vasomotor and dystrohic changes and often motor impairments. Although the exact pathogenesis of RSD is unknown, for long the sympathetic nervous system was thought to play a dominant role and pharmacological and surgical sympathectomies have been a mainstay in treatment procedures. However, there is growing evidence of a pivotal role of C- and A delta-fibres in the aetiology of RSD. These fibres subserve a dual sensory-effector function. Besides the initiation of afferent impulses, they release neuropeptide mediators that cause a peripheral neurogenic inflammatory reaction and central neuroplastic reactions. Brachial plexus blockade (BPB) with local anaesthetic drugs interferes with the conduction of action potentials along both sympathetic efferents and the somatosensory C- and A delta-afferents and therefore seems a potential treatment modality in RSD. The aim of this study was to draw attention on this regional anaesthetic technique that is not commonly used in RSD. In this study six patients with severe RSD of an upper extremity in varying stages were treated with BPB in the multidisciplinary setting of an out-patient rehabilitation clinic with a follow-up of 12 to 21 months. The study was not placebo controlled. Three patients responded well. In these cases the treatment interval varied from 3 to 6 months, one case had RSD stage 1 and the two others stage 2. Three patients showed poor response. In one of these patients the initial effect was good but due to an infection at the insertion site of the catheter BPB had to be discontinued. The other two poor-responders had treatment intervals of 7 and 25 months and both had stage 3 RSD. We conclude that there is theoretical and clinical support to further evaluate the effect of BPB as a treatment modality in the early stages of RSD.

Adult

Identification of static and dynamic postural instability following traumatic brain injury.

OBJECTIVE: Quantitative evaluation of static and dynamic aspects of postural instability as a long-term consequence of traumatic brain injury (TBI). DESIGN: Experimental two-group design. SETTING: Outpatient rehabilitation department. PATIENTS AND OTHER PARTICIPANTS: From a consecutive sample of TBI patients at least 6 months after trauma, 20 subjects were selected who complained of reduced gross motor skills but showed no sensorimotor impairments in a standard neurological examination (11 men, 9 women; mean age 36.2 +/- 10.7 years). Thirteen patients had sustained mild, 2 moderate, and 5 severe TBI. Twenty healthy controls were matched for age and gender. INTERVENTION: None. MAIN OUTCOME MEASURES: A dual-plate force platform recorded the amplitude and velocity of the center-of-pressure fluctuations in the anteroposterior (AP) and lateral (LAT) sway directions during quiet standing. Also, the speed and fluency of weight shifting using visual feedback was registered. Both balance tasks were combined with an arithmetic task, whereas quiet standing was also tested with visual deprivation. RESULTS: Compared to controls, TBI patients showed an increase of over 50% in AP and LAT sway, and a weight-shifting speed 20% lower. Dual-task interference was never significant. Visual deprivation was most detrimental for the TBI patients, particularly for LAT sway control. CONCLUSION: A long-term overall reduction in both static and dynamic control of posture can be present after TBI, even in patients without clear neurological deficits. Force-plate recordings can identify such (latent) balance problems. Visual deprivation during quiet standing appears a simple, sensitive test for postural instability related to sensory integration deficits.

Adolescent